Department of Cell and Developmental Biology, Vanderbilt University, Nashville, TN 37240, USA.
Department of Molecular and Cellular Biochemistry, University of Kentucky, Lexington, KY 40536, USA.
Aging (Albany NY). 2021 Mar 21;13(6):7846-7871. doi: 10.18632/aging.202849.
The increasing prevalence of age-related diseases and resulting healthcare insecurity and emotional burden require novel treatment approaches. Several promising strategies seek to limit nutrients and promote healthy aging. Unfortunately, the human desire to consume food means this strategy is not practical for most people but pharmacological approaches might be a viable alternative. We previously showed that myriocin, which impairs sphingolipid synthesis, increases lifespan in by modulating signaling pathways including the target of rapamycin complex 1 (TORC1). Since TORC1 senses cellular amino acids, we analyzed amino acid pools and identified 17 that are lowered by myriocin treatment. Studying the methionine transporter, Mup1, we found that newly synthesized Mup1 traffics to the plasma membrane and is stable for several hours but is inactive in drug-treated cells. Activity can be restored by adding phytosphingosine to culture medium thereby bypassing drug inhibition, thus confirming a sphingolipid requirement for Mup1 activity. Importantly, genetic analysis of myriocin-induced longevity revealed a requirement for the Gtr1/2 (mammalian Rags) and Vps34-Pib2 amino acid sensing pathways upstream of TORC1, consistent with a mechanism of action involving decreased amino acid availability. These studies demonstrate the feasibility of pharmacologically inducing a state resembling amino acid restriction to promote healthy aging.
与年龄相关的疾病不断增多,导致医疗保健不安全和情绪负担加重,这需要新的治疗方法。有几种有前途的策略旨在限制营养物质的摄入,以促进健康衰老。不幸的是,人类对食物的渴望意味着这种策略对大多数人来说并不实际,但药理学方法可能是一种可行的替代方案。我们之前曾表明,抑制鞘脂合成的霉菌酸通过调节包括雷帕霉素靶蛋白复合物 1(TORC1)在内的信号通路,可延长 的寿命。由于 TORC1 感知细胞内的氨基酸,我们分析了氨基酸池,并确定了 17 种氨基酸因霉菌酸处理而降低。在研究蛋氨酸转运蛋白 Mup1 时,我们发现新合成的 Mup1 会向质膜运输,并在几小时内保持稳定,但在药物处理的细胞中没有活性。通过向培养基中添加植物鞘氨醇,可以恢复其活性,从而绕过药物抑制,从而证实 Mup1 活性需要鞘脂。重要的是,霉菌酸诱导长寿的遗传分析显示,TORC1 上游的 Gtr1/2(哺乳动物 Rag)和 Vps34-Pib2 氨基酸感应途径需要该途径,这与涉及氨基酸可用性降低的作用机制一致。这些研究表明,通过药理学诱导类似于限制氨基酸摄入的状态来促进健康衰老具有可行性。